STAIN RESISTANT POLYAMIDE POLYMERS OBTAINED VIA HIGH END GROUP TERMINATION
The present disclosure provides fibers and filaments formed from polyamide polymers polymerized with dual termination of the amino and carboxyl end-groups, referred to herein as dual-terminated polyamides, or dual terminated PA. In one embodiment, the dual-terminated polyamide is considered “highly terminated” and is useful in producing stain resistant textiles such as carpet fibers, for example.
1 . A polyamide polymer having amine end groups and carboxyl end groups, the polyamide polymer further comprising:
an amine end group concentration less than 20 mmol/kg;
a carboxyl end group concentration less than 20 mmol/kg; and
a formic acid viscosity (FAV) of at least 40 as measured according to ASTM D-789.
2 . The polyamide polymer of claim 1 , wherein the polyamide polymer has an amine end group concentration of between 8 mmol/kg and 20 mmol/kg.
3 . The polyamide polymer of claim 1 , wherein the polyamide polymer has a carboxyl end group concentration of between 6 mmol/kg and 20 mmol/kg.
4 . The polyamide polymer of claim 1 , wherein the polyamide polymer has a formic acid viscosity (FAV) of at least 50 as measured according to ASTM D-789.
5 . The polyamide polymer of claim 1 , wherein the polyamide polymer has a formic acid viscosity between 40 and 90 as measured according to ASTM D-789.
6 . The polyamide polymer of claim 1 , wherein the polyamide polymer has an extractables content of less than 1.0 wt. % as measured according to ISO 6427.
7 . The polyamide polymer of claim 1 , wherein the polyamide polymer has a □E according to AATCC Test Method 175-08 of less than 10.
8 . The polymer of claim 1 , wherein the polyamide polymer is polycaprolactam.
9 . A method of forming a polyamide polymer fiber, comprising the steps of:
providing a polyamide polymer having amine end groups and carboxyl end groups, the polyamide polymer further comprising:
an amine end group concentration less than 20 mmol/kg;
a carboxyl end group concentration less than 20 mmol/kg; and
a formic acid viscosity (FAV) of at least 40 as measured according to ASTM D-789; and
spinning the polyamide polymer at a spinning speed of at least 2,500 m/min to form a plurality of fibers.
10 . The method of claim 9 , wherein said spinning step comprises spinning the polyamide polymer at a spinning speed of between 2,500 m/min and 5,000 m/min to form a plurality of fibers.
11 . The method of claim 9 , wherein the fibers have a □E according to AATCC Test Method 175-08 of less than 22.
12 . The method of claim 9 , wherein the polyamide polymer of said providing step is polycaprolactam.
13 . The method of claim 9 , wherein the polyamide polymer of said providing step has an amine end group concentration of between 8 mmol/kg and 20 mmol/kg.
14 . The method of claim 9 , wherein the polyamide polymer of said providing step has a carboxyl end group concentration of between 6 mmol/kg and 20 mmol/kg.
15 . The method of claim 9 , wherein the polyamide polymer of said providing step has a formic acid viscosity between 40 and 90 as measured according to ASTM D-789.
16 . The method of claim 9 , wherein the polyamide polymer of said providing step has an extractables content of less than 1.0 wt. % as measured according to ISO 6427.